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Emerging Technologies for Electric and Hybrid Vehicles
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Seite - 359 - in Emerging Technologies for Electric and Hybrid Vehicles

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Energies 2016,9, 240 40. Peng,Q.H.;Du,Q.G.Performanceevaluationofavariable frequencyheatpumpairconditioningsystemfor electricbus. IJFMS2015,8, 13–22. [CrossRef] 41. Yeh,T.J.;Chen,Y.J.;Hwang,W.Y.;Lin, J.L. Incorporatingfancontrol intoair-conditioningsystemsto improve energyefficiencyandtransient response.Appl. Therm. Eng. 2009,29, 1955–1964. [CrossRef] 42. Shi,W.X.; Shi,B.H.;Yan,Q.S.Threecontrolalgorithmsforair conditionerswith frequencycontrol.HeatVent. AirCond. 2000,30, 16–19. 43. Li,N.;Xia,L.;Deng,S.M.;Xu,X.G.;Chan,M.Y.Dynamicmodelingandcontrolofadirect expansionair conditioningsystemusingartificialneuralnetwork.Appl. Energy2012,91, 290–300. [CrossRef] 44. Zhang, J.Z.Structurecharacteristicsofelectricair-conditioningsysteminPriuscar.Automob.Maint. 2006,8, 4–5. 45. Li,S.BYD:Activeresearchonair-conditioningsystemforgreencar.Refrig.AirCond. 2015,15, 85–86. 46. Li,X.H.Developmentandapplicationof frequencyconversionairconditionerwithelectricheatpumpfor electricbus.BusTechnol. Res. 2009,31, 23–25. 47. Suzuki, T.; Ishii, K.Air Conditioning System for Electric Vehicle; SAE Technical PaperNo. 960688; SAE International:Warrendale,PA,USA,1996. 48. Makino,M.;Ogawa,N.; Abe,Y.; Fujiwara,Y.AutomotiveAir-ConditioningElectricallyDrivenCompressor; SAETechnicalPaperNo. 2003-01-0734;SAEInternational:Warrendale,PA,USA,2003. 49. Naidu,M.;Nehl, T.W.;Gopalakrishnan, S.;Wurth,L.ElectricCompressorDrivewith IntegratedElectronics for 42 V Automotive HVAC Systems; SAE Technical Paper No. 2005-01-1318; SAE International: Warrendale,PA,USA,2005. 50. Hwang,K.Y.;Park,G.B.;Cho,H.S.Designof IPMSMfor theElectricalCompressor inEV; SAETechnicalPaper No. 2011-28-0063;SAEInternational:Warrendale,PA,USA,2011. 51. Baumgart, R.; Aurich, J.; Ackermann, J.; Danzer,C.Comparison andEvaluation of aNew InnovativeDrive Concept for the Air Conditioning Compressor of Electric Vehicles; SAE Technical Paper No. 2015-26-0045; SAEInternational:Warrendale,PA,USA,2015. 52. Wei,M.S.;Huang,H.S.; Song,P.P.;Peng,S.Z.;Wang,Z.X.;Zhang,H.Experimental investigationsofdifferent compressorsbasedelectricvehicleheatpumpair-conditioningsystemsin lowtemperatureenvironment. InProceedingsof the IEEETransportationElectrificationConferenceandExpo, ITECAsia-Pacific,Beijing, China,31August–3September2014. 53. Chen, G.S.; Shi, B.X.; Ma, G.Y. The simulating test of vane compressor with double working cavity. J.GuangdongUniv. Technol. 2000,17, 11–14. 54. Krahenbuhl,D.; Zwyssig,C.;Weser,H.; Kolar, J.W.Aminiature 500000-r/min electricallydriven turbo compressor. IEEETrans. Ind.Appl. 2010,46, 2459–2466. [CrossRef] 55. Sakai,T.;Ueda,M.2-WayDrivenCompressor forHybridVehicleClimateControlSystem; SAETechnicalPaper No. 2004-01-0906;SAEInternational:Warrendale,PA,USA,2004. 56. Cummings, R.W.; Shah, R.K. Experimental Performance Evaluation of Automotive Air-Conditioning Heat ExchangersasComponentsand inVehicleSystems; SAETechnicalPaperNo. 2005-01-2003;SAEInternational: Warrendale,PA,USA,2005. 57. Huang,D.; Liu,X.Y.;Wang,Y.L.Effect offin typeon frostingcharacteristicsof anair-sourceheatpump. J.Refrig. 2012,33, 12–17. 58. Liu,N.; Li, J.M.; Li,H.Q.Performance researchonheatpumpair conditionerusingmicro-channel heat exchangers.Refrig.AirCond. 2011,11, 96–99. 59. Zhang,L.Analysisofperformanceofairconditionerswithmicro-channelheatexchangers.Refrig. Technol. 2010,30, 33–36. 60. Qi, Z.G.; Zhao, Y.; Chen, J.P. Performance enhancement studyofmobile air conditioning systemusing microchannelheatexchangers. Int. J.Refrig. 2010,33, 301–312. [CrossRef] 61. Wu, J.H.;Xie,F.;Liu,C.P.;Ouyang,G.AdaptabilityResearchonmicro-channelheatexchangerappliedto heatpumpairconditioningsystemforelectricalvehicle. J.Mech. Eng. 2012,48, 141–147. [CrossRef] 62. Brodie, B.R.; Takano, Y.; Gocho, M. Evaporator with Integrated Ejector for Automotive Cabin Cooling; SAETechnicalPaperNo. 2012-01-1048;SAEInternational:Warrendale,PA,USA,2012. 63. Wang,Y.; Shi, J.Y.; Chen, J.P.;Wang,X.N.;Kang,Z.J.Comparative studyof twokindsof automotiveair conditioningsystemwith threeheatexchangersandfour-wayvalve. J.Refrig. 2014,35, 71–76. 359
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Emerging Technologies for Electric and Hybrid Vehicles
Titel
Emerging Technologies for Electric and Hybrid Vehicles
Herausgeber
MDPI
Ort
Basel
Datum
2017
Sprache
englisch
Lizenz
CC BY-NC-ND 4.0
ISBN
978-3-03897-191-7
Abmessungen
17.0 x 24.4 cm
Seiten
376
Schlagwörter
electric vehicle, plug-in hybrid electric vehicle (PHEV), energy sources, energy management strategy, energy-storage system, charging technologies, control algorithms, battery, operating scenario, wireless power transfer (WPT)
Kategorie
Technik
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Emerging Technologies for Electric and Hybrid Vehicles